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The performance of fluidized beds, packed beds, and screens as fuel cell electrodes

机译:流化床,填充床和筛网作为燃料电池电极的性能

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摘要

At present, most fuel cells employ porous gas diffusion (PGD) electrodes. Although much effort has been spent on their development, the performance and cost of PGD electrodes are still major obstacles to the successful commercialization of fuel cells. As a means to bypass the drawbacks associated with PGD electrodes, several researchers have taken an alternative approach to electrode design by considering fluidized bed electrodes (FBEs), a type of flooded electrode that relies on convective rather than diffusive mass transport. Several reviews and past studies claim that FBEs have the potential for reaching high power density at a low cost due to several inherent advantages. However, the results so far of fluidized bed electrodes applied to fuel cells have been poor, and the past studies have not offered effective explanations for the discrepancy between expected and actual performance. A fluidized bed electrode model has been developed and applied to the data obtained by previous researchers in order to explain the poor performance of these past designs. As points of comparison, models have also been developed to predict the performance of packed bed electrodes and screen electrodes (two other flooded electrode designs).
机译:当前,大多数燃料电池采用多孔气体扩散(PGD)电极。尽管已经在其开发上花费了很多努力,但是PGD电极的性能和成本仍然是燃料电池成功商业化的主要障碍。为了绕过PGD电极的缺点,一些研究人员通过考虑流化床电极(FBE)(一种依靠对流而不是扩散质量传递的溢流电极),采用了另一种电极设计方法。几篇评论和过去的研究声称,由于多种固有优势,FBE具有以低成本实现高功率密度的潜力。然而,到目前为止流化床电极应用于燃料电池的结果是很差的,并且过去的研究还没有为预期性能和实际性能之间的差异提供有效的解释。已经开发了流化床电极模型并将其应用于以前的研究人员获得的数据,以解释这些过去设计的不良性能。作为比较点,还开发了模型来预测填充床电极和屏蔽电极的性能(其他两种溢流电极设计)。

著录项

  • 作者

    Ruflin Justin 1981-;

  • 作者单位
  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 eng
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